Vibrio aquimaris: FIV01_04585
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Entry
FIV01_04585 CDS
T06969
Symbol
katA
Name
(GenBank) Catalase
KO
K03781
catalase [EC:
1.11.1.6
]
Organism
vaq
Vibrio aquimaris
Pathway
vaq00380
Tryptophan metabolism
vaq00630
Glyoxylate and dicarboxylate metabolism
vaq01100
Metabolic pathways
vaq01110
Biosynthesis of secondary metabolites
vaq01200
Carbon metabolism
vaq04146
Peroxisome
Brite
KEGG Orthology (KO) [BR:
vaq00001
]
09100 Metabolism
09101 Carbohydrate metabolism
00630 Glyoxylate and dicarboxylate metabolism
FIV01_04585 (katA)
09105 Amino acid metabolism
00380 Tryptophan metabolism
FIV01_04585 (katA)
09140 Cellular Processes
09141 Transport and catabolism
04146 Peroxisome
FIV01_04585 (katA)
Enzymes [BR:
vaq01000
]
1. Oxidoreductases
1.11 Acting on a peroxide as acceptor
1.11.1 Peroxidases
1.11.1.6 catalase
FIV01_04585 (katA)
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Motif
Pfam:
Catalase
Catalase-rel
Motif
Other DBs
NCBI-ProteinID:
QFT25699
UniProt:
A0A5P9CHA1
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Position
complement(966314..967747)
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AA seq
477 aa
AA seq
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MTKKLTTAAGCPVSNNQNVMTAGPRGPQLLQDVWFLEKLAHFDREVIPERRMHAKGSGAY
GTFTVTHDITKYTRAKIFSEIGKKTELFARFTTVAGERGAADAERDIRGFALKFYTEEGN
WDLVGNNTPIFFLRDPLKFPDLNHAVKRDPRTNMRSAINNWDFWTSLPEAFHQVTIVMSD
RGIPASYRHMHGFGSHTFSFINADKERYWVKFHFKTQQGIKNLTDQEAAEIIGSDRESYH
RDLYQAIENKDFPKWKMYVQIMPELEADKVNFNPFDLTKIWSQTDYPLIPVGEFELNRNP
ENFHAEVEQSAFNPAAVVPGISFSPDKMLQGRLFAYGDAQRYRLGVNHHQIPVNAPKCPV
HSYHRDGAMRVDGNYGSTIGYQPNSKQEWVEQPDFSEPPLRIHGDADHYDHRVDEDYFSQ
AGDLFRLMNNEQRQALFDNTARAMQGVPKEIQERHINHAFQADEDYGKGLRAALGLD
NT seq
1434 nt
NT seq
+upstream
nt +downstream
nt
atgactaaaaagctaactactgctgcaggctgccctgtcagcaataaccaaaatgtaatg
acggctgggcctcggggtccacaactactccaagatgtatggtttcttgaaaaattagct
cactttgatcgcgaagtgatacctgaaagacgtatgcatgccaaaggctctggcgcttat
ggtactttcaccgtcactcatgatattacaaaatacacgcgagcaaagatcttctcagaa
atcggcaaaaaaaccgagctatttgctcgatttaccactgttgcgggtgagcgaggcgct
gcagatgcagagcgtgacattagaggctttgcactcaaattttataccgaggaaggaaac
tgggatttggtcggtaataacacaccgatattttttctgcgcgacccactaaagttccct
gacctaaaccatgcggtgaaacgagatcctcgcaccaatatgcgaagtgccatcaacaac
tgggacttttggacctcacttcctgaagcctttcaccaagtcacgattgttatgagtgat
cgtggtattcctgcatcttaccgtcacatgcatggttttggcagtcatacctttagcttc
atcaatgccgataaagagcgctattgggttaagtttcattttaaaactcaacaaggtatt
aagaacctgacagaccaagaggccgctgaaataataggcagcgatcgggaaagctaccat
agagatctctatcaagcaattgaaaataaagactttccaaaatggaagatgtatgtacag
atcatgccagagctcgaggcagataaggttaactttaatccattcgatttaactaaaata
tggtcacaaacggactacccgcttatacctgtcggtgagtttgagctaaaccgaaaccca
gaaaacttccatgcagaagttgaacaatctgcctttaatccggcagccgtcgtcccaggt
attagcttctcaccagacaaaatgttacaaggacgcttgtttgcctatggcgatgcgcag
cgctatcgtcttggcgtcaatcaccatcaaatccctgtcaatgcacctaaatgtccagtt
cacagctaccaccgtgatggagcaatgcgagtagatggtaactatgggtctactatcggt
tatcaaccaaactcaaaacaagagtgggtcgaacaacctgatttttcagagccaccactg
cgtatacatggggacgcggatcattatgatcatagagtcgatgaagattactttagtcaa
gctggtgatttattccgcctaatgaataacgaacagcgccaagcattgtttgataatacg
gctcgcgccatgcaaggggtgccaaaagaaattcaagaacgccatattaaccatgctttc
caagctgatgaagattatgggaaaggactcagagcagctcttggacttgattaa
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